论文标题

具有光学相干折射断层扫描的计算3D显微镜

Computational 3D microscopy with optical coherence refraction tomography

论文作者

Zhou, Kevin C., McNabb, Ryan P., Qian, Ruobing, Degan, Simone, Dhalla, Al-Hafeez, Farsiu, Sina, Izatt, Joseph A.

论文摘要

光学相干断层扫描(OCT)已成为体内临床诊断3D成像模式的广泛成功,影响了眼科,心脏病学和胃肠病学。尽管具有许多优势,例如高灵敏度,速度和深度穿透性,但OCT遭受了几个缺点,最终限制了其作为3D显微镜工具的效用,例如其普遍存在的相干斑点噪声和维持毫米尺度成像深度所需的较差的横向分辨率。在这里,我们介绍了3D光学相干屈光层析成像(OCRT),这是OCT的计算扩展,该计算扩展通过组合多个OCT量通过在两个旋转轴上获取的多个OCT量来综合了不一致的对比度机制,形成了分辨率增强的,斑点的斑点,换回的,反射式,反射率校正后的3D重新结构。我们的无标签计算3D显微镜具有一种新颖的光学设计,其中包含抛物线镜,以捕获5D plenoptic数据集,其中包括毫米3D视野,最多可$ \ pm75^\ circ $,而无需移动样品。我们证明3D OCRT揭示了常规OCT在果蝇,斑马鱼和小鼠样品中未观察到的3D特征。

Optical coherence tomography (OCT) has seen widespread success as an in vivo clinical diagnostic 3D imaging modality, impacting areas including ophthalmology, cardiology, and gastroenterology. Despite its many advantages, such as high sensitivity, speed, and depth penetration, OCT suffers from several shortcomings that ultimately limit its utility as a 3D microscopy tool, such as its pervasive coherent speckle noise and poor lateral resolution required to maintain millimeter-scale imaging depths. Here, we present 3D optical coherence refraction tomography (OCRT), a computational extension of OCT which synthesizes an incoherent contrast mechanism by combining multiple OCT volumes, acquired across two rotation axes, to form a resolution-enhanced, speckle-reduced, refraction-corrected 3D reconstruction. Our label-free computational 3D microscope features a novel optical design incorporating a parabolic mirror to enable the capture of 5D plenoptic datasets, consisting of millimetric 3D fields of view over up to $\pm75^\circ$ without moving the sample. We demonstrate that 3D OCRT reveals 3D features unobserved by conventional OCT in fruit fly, zebrafish, and mouse samples.

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